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The mechanism of thermally transferred optically stimulated luminescence in quartz

机译:石英中热转移光学刺激发光的机制

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In this paper we assess two mechanisms for the production of the thermally transferred optically stimulated luminescence (TT-OSL) signal in quartz when all stimulation is carried out at 125 deg C. One mechanism is based on the double transfer process previously put forward for OSL recuperation following storage at room temperature. In this mechanism, electrons from the trap giving rise to the fast OSL component are released by optical stimulation and some are transferred into a refuge trap via the conduction band; these electrons are then released from the refuge trap by a thermal treatment and some are retrapped in the trap responsible for the fast OSL component. The other mechanism is based on a single transfer process in which electrons are transferred by thermal treatment from a light-sensitive trap via the conduction band to the trap that gives rise to the fast component of the OSL signal, this trap having been emptied by the initial optical stimulation. The analysis of the measured OSL and TT-OSL decay curves suggest that the two signals are derived from the same traps and are dominated by the fast OSL component. The experimental data presented support the hypothesis that the original source of the electrons that are thermally transferred is a trap that is less light sensitive than that giving rise to the fast OSL, but one that has similar thermal stability. Thus, a single transfer mechanism explains the production of the TT-OSL signal observed for stimulation above 120 deg C when the 110 deg C TL trap is kept empty.
机译:在本文中,当所有刺激在125℃下进行所有刺激时,我们评估两种用于在石英中产生热转移的光学刺激的发光(TT-OSL)信号的机制。一种机制基于先前提出的OSL的双转移过程在室温下储存后的恢复。在该机制中,通过光学刺激释放来自产生快速OSL组分的陷阱的电子,并且有些通过导通带传递到避难陷阱中;然后,这些电子通过热处理从避难疏水阀释放,并且在负责快速OSL组分的捕集器中重新捕集一些电子。另一机制基于单个转移过程,其中通过通过导通陷阱通过传导陷阱热处理到陷阱的热处理,这是对OSL信号的快速分量的,这陷阱被清空了初始光学刺激。测量OSL和TT-OSL衰减曲线的分析表明,两个信号源自相同的陷阱,并由快速OSL组件主导。所提出的实验数据支持的假设是热传递的电子的原始来源是比产生快速OSL的光敏感的捕集器,而是具有相似的热稳定性的陷阱。因此,单个转移机制解释了在110℃TL阱保持空时观察到以上刺激的TT-OSL信号的产生。

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